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Triply Heavy Ω Baryons with Jethad: A High-Energy Viewpoint

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We investigate the leading-power fragmentation of triply heavy Ω baryons in high-energy hadronic collisions. Extending our previous work on the Ω3c sector, we release the full OMG3Q1.0 family of collinear fragmentation functions by completing the description of the charm channel and delivering novel Ω3b functions. These hadron-structure-oriented functions are constructed from improved proxy-model calculations for heavy-quark and gluon fragmentation, matched to a flavor-aware DGLAP evolution based on the HF-NRevo scheme. For phenomenological applications, we employ the (sym)Jethad multimodular interface to compute and analyze NLL/NLO+ semi-inclusive Ω3Q plus jet distributions at the HL-LHC and FCC. This work consolidates the link between hadron structure, rare baryon production, and resummed QCD at the energy frontier.
Title: Triply Heavy Ω Baryons with Jethad: A High-Energy Viewpoint
Description:
We investigate the leading-power fragmentation of triply heavy Ω baryons in high-energy hadronic collisions.
Extending our previous work on the Ω3c sector, we release the full OMG3Q1.
0 family of collinear fragmentation functions by completing the description of the charm channel and delivering novel Ω3b functions.
These hadron-structure-oriented functions are constructed from improved proxy-model calculations for heavy-quark and gluon fragmentation, matched to a flavor-aware DGLAP evolution based on the HF-NRevo scheme.
For phenomenological applications, we employ the (sym)Jethad multimodular interface to compute and analyze NLL/NLO+ semi-inclusive Ω3Q plus jet distributions at the HL-LHC and FCC.
This work consolidates the link between hadron structure, rare baryon production, and resummed QCD at the energy frontier.

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